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567 lines
20 KiB
C
567 lines
20 KiB
C
/*
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* omap_hwmod macros, structures
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*
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* Copyright (C) 2009-2010 Nokia Corporation
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* Paul Walmsley
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*
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* Created in collaboration with (alphabetical order): Benoît Cousson,
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* Kevin Hilman, Tony Lindgren, Rajendra Nayak, Vikram Pandita, Sakari
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* Poussa, Anand Sawant, Santosh Shilimkar, Richard Woodruff
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License version 2 as
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* published by the Free Software Foundation.
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*
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* These headers and macros are used to define OMAP on-chip module
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* data and their integration with other OMAP modules and Linux.
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* Copious documentation and references can also be found in the
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* omap_hwmod code, in arch/arm/mach-omap2/omap_hwmod.c (as of this
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* writing).
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*
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* To do:
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* - add interconnect error log structures
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* - add pinmuxing
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* - init_conn_id_bit (CONNID_BIT_VECTOR)
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* - implement default hwmod SMS/SDRC flags?
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* - remove unused fields
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*
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*/
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#ifndef __ARCH_ARM_PLAT_OMAP_INCLUDE_MACH_OMAP_HWMOD_H
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#define __ARCH_ARM_PLAT_OMAP_INCLUDE_MACH_OMAP_HWMOD_H
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#include <linux/kernel.h>
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#include <linux/list.h>
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#include <linux/ioport.h>
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#include <linux/mutex.h>
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#include <plat/cpu.h>
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struct omap_device;
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extern struct omap_hwmod_sysc_fields omap_hwmod_sysc_type1;
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extern struct omap_hwmod_sysc_fields omap_hwmod_sysc_type2;
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/*
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* OCP SYSCONFIG bit shifts/masks TYPE1. These are for IPs compliant
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* with the original PRCM protocol defined for OMAP2420
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*/
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#define SYSC_TYPE1_MIDLEMODE_SHIFT 12
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#define SYSC_TYPE1_MIDLEMODE_MASK (0x3 << SYSC_MIDLEMODE_SHIFT)
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#define SYSC_TYPE1_CLOCKACTIVITY_SHIFT 8
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#define SYSC_TYPE1_CLOCKACTIVITY_MASK (0x3 << SYSC_CLOCKACTIVITY_SHIFT)
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#define SYSC_TYPE1_SIDLEMODE_SHIFT 3
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#define SYSC_TYPE1_SIDLEMODE_MASK (0x3 << SYSC_SIDLEMODE_SHIFT)
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#define SYSC_TYPE1_ENAWAKEUP_SHIFT 2
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#define SYSC_TYPE1_ENAWAKEUP_MASK (1 << SYSC_ENAWAKEUP_SHIFT)
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#define SYSC_TYPE1_SOFTRESET_SHIFT 1
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#define SYSC_TYPE1_SOFTRESET_MASK (1 << SYSC_SOFTRESET_SHIFT)
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#define SYSC_TYPE1_AUTOIDLE_SHIFT 0
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#define SYSC_TYPE1_AUTOIDLE_MASK (1 << SYSC_AUTOIDLE_SHIFT)
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/*
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* OCP SYSCONFIG bit shifts/masks TYPE2. These are for IPs compliant
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* with the new PRCM protocol defined for new OMAP4 IPs.
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*/
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#define SYSC_TYPE2_SOFTRESET_SHIFT 0
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#define SYSC_TYPE2_SOFTRESET_MASK (1 << SYSC_TYPE2_SOFTRESET_SHIFT)
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#define SYSC_TYPE2_SIDLEMODE_SHIFT 2
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#define SYSC_TYPE2_SIDLEMODE_MASK (0x3 << SYSC_TYPE2_SIDLEMODE_SHIFT)
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#define SYSC_TYPE2_MIDLEMODE_SHIFT 4
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#define SYSC_TYPE2_MIDLEMODE_MASK (0x3 << SYSC_TYPE2_MIDLEMODE_SHIFT)
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/* OCP SYSSTATUS bit shifts/masks */
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#define SYSS_RESETDONE_SHIFT 0
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#define SYSS_RESETDONE_MASK (1 << SYSS_RESETDONE_SHIFT)
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/* Master standby/slave idle mode flags */
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#define HWMOD_IDLEMODE_FORCE (1 << 0)
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#define HWMOD_IDLEMODE_NO (1 << 1)
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#define HWMOD_IDLEMODE_SMART (1 << 2)
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/**
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* struct omap_hwmod_irq_info - MPU IRQs used by the hwmod
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* @name: name of the IRQ channel (module local name)
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* @irq_ch: IRQ channel ID
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*
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* @name should be something short, e.g., "tx" or "rx". It is for use
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* by platform_get_resource_byname(). It is defined locally to the
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* hwmod.
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*/
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struct omap_hwmod_irq_info {
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const char *name;
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u16 irq;
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};
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/**
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* struct omap_hwmod_dma_info - DMA channels used by the hwmod
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* @name: name of the DMA channel (module local name)
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* @dma_req: DMA request ID
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*
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* @name should be something short, e.g., "tx" or "rx". It is for use
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* by platform_get_resource_byname(). It is defined locally to the
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* hwmod.
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*/
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struct omap_hwmod_dma_info {
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const char *name;
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u16 dma_req;
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};
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/**
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* struct omap_hwmod_rst_info - IPs reset lines use by hwmod
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* @name: name of the reset line (module local name)
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* @rst_shift: Offset of the reset bit
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*
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* @name should be something short, e.g., "cpu0" or "rst". It is defined
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* locally to the hwmod.
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*/
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struct omap_hwmod_rst_info {
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const char *name;
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u8 rst_shift;
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};
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/**
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* struct omap_hwmod_opt_clk - optional clocks used by this hwmod
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* @role: "sys", "32k", "tv", etc -- for use in clk_get()
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* @clk: opt clock: OMAP clock name
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* @_clk: pointer to the struct clk (filled in at runtime)
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*
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* The module's interface clock and main functional clock should not
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* be added as optional clocks.
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*/
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struct omap_hwmod_opt_clk {
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const char *role;
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const char *clk;
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struct clk *_clk;
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};
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/* omap_hwmod_omap2_firewall.flags bits */
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#define OMAP_FIREWALL_L3 (1 << 0)
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#define OMAP_FIREWALL_L4 (1 << 1)
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/**
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* struct omap_hwmod_omap2_firewall - OMAP2/3 device firewall data
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* @l3_perm_bit: bit shift for L3_PM_*_PERMISSION_*
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* @l4_fw_region: L4 firewall region ID
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* @l4_prot_group: L4 protection group ID
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* @flags: (see omap_hwmod_omap2_firewall.flags macros above)
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*/
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struct omap_hwmod_omap2_firewall {
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u8 l3_perm_bit;
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u8 l4_fw_region;
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u8 l4_prot_group;
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u8 flags;
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};
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/*
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* omap_hwmod_addr_space.flags bits
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*
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* ADDR_MAP_ON_INIT: Map this address space during omap_hwmod init.
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* ADDR_TYPE_RT: Address space contains module register target data.
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*/
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#define ADDR_MAP_ON_INIT (1 << 0)
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#define ADDR_TYPE_RT (1 << 1)
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/**
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* struct omap_hwmod_addr_space - MPU address space handled by the hwmod
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* @pa_start: starting physical address
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* @pa_end: ending physical address
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* @flags: (see omap_hwmod_addr_space.flags macros above)
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*
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* Address space doesn't necessarily follow physical interconnect
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* structure. GPMC is one example.
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*/
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struct omap_hwmod_addr_space {
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u32 pa_start;
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u32 pa_end;
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u8 flags;
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};
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/*
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* omap_hwmod_ocp_if.user bits: these indicate the initiators that use this
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* interface to interact with the hwmod. Used to add sleep dependencies
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* when the module is enabled or disabled.
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*/
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#define OCP_USER_MPU (1 << 0)
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#define OCP_USER_SDMA (1 << 1)
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/* omap_hwmod_ocp_if.flags bits */
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#define OCPIF_SWSUP_IDLE (1 << 0)
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#define OCPIF_CAN_BURST (1 << 1)
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/**
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* struct omap_hwmod_ocp_if - OCP interface data
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* @master: struct omap_hwmod that initiates OCP transactions on this link
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* @slave: struct omap_hwmod that responds to OCP transactions on this link
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* @addr: address space associated with this link
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* @clk: interface clock: OMAP clock name
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* @_clk: pointer to the interface struct clk (filled in at runtime)
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* @fw: interface firewall data
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* @addr_cnt: ARRAY_SIZE(@addr)
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* @width: OCP data width
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* @thread_cnt: number of threads
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* @max_burst_len: maximum burst length in @width sized words (0 if unlimited)
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* @user: initiators using this interface (see OCP_USER_* macros above)
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* @flags: OCP interface flags (see OCPIF_* macros above)
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*
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* It may also be useful to add a tag_cnt field for OCP2.x devices.
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*
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* Parameter names beginning with an underscore are managed internally by
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* the omap_hwmod code and should not be set during initialization.
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*/
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struct omap_hwmod_ocp_if {
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struct omap_hwmod *master;
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struct omap_hwmod *slave;
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struct omap_hwmod_addr_space *addr;
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const char *clk;
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struct clk *_clk;
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union {
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struct omap_hwmod_omap2_firewall omap2;
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} fw;
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u8 addr_cnt;
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u8 width;
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u8 thread_cnt;
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u8 max_burst_len;
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u8 user;
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u8 flags;
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};
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/* Macros for use in struct omap_hwmod_sysconfig */
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/* Flags for use in omap_hwmod_sysconfig.idlemodes */
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#define MASTER_STANDBY_SHIFT 2
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#define SLAVE_IDLE_SHIFT 0
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#define SIDLE_FORCE (HWMOD_IDLEMODE_FORCE << SLAVE_IDLE_SHIFT)
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#define SIDLE_NO (HWMOD_IDLEMODE_NO << SLAVE_IDLE_SHIFT)
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#define SIDLE_SMART (HWMOD_IDLEMODE_SMART << SLAVE_IDLE_SHIFT)
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#define MSTANDBY_FORCE (HWMOD_IDLEMODE_FORCE << MASTER_STANDBY_SHIFT)
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#define MSTANDBY_NO (HWMOD_IDLEMODE_NO << MASTER_STANDBY_SHIFT)
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#define MSTANDBY_SMART (HWMOD_IDLEMODE_SMART << MASTER_STANDBY_SHIFT)
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/* omap_hwmod_sysconfig.sysc_flags capability flags */
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#define SYSC_HAS_AUTOIDLE (1 << 0)
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#define SYSC_HAS_SOFTRESET (1 << 1)
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#define SYSC_HAS_ENAWAKEUP (1 << 2)
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#define SYSC_HAS_EMUFREE (1 << 3)
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#define SYSC_HAS_CLOCKACTIVITY (1 << 4)
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#define SYSC_HAS_SIDLEMODE (1 << 5)
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#define SYSC_HAS_MIDLEMODE (1 << 6)
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#define SYSS_HAS_RESET_STATUS (1 << 7)
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#define SYSC_NO_CACHE (1 << 8) /* XXX SW flag, belongs elsewhere */
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#define SYSC_HAS_RESET_STATUS (1 << 9)
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/* omap_hwmod_sysconfig.clockact flags */
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#define CLOCKACT_TEST_BOTH 0x0
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#define CLOCKACT_TEST_MAIN 0x1
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#define CLOCKACT_TEST_ICLK 0x2
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#define CLOCKACT_TEST_NONE 0x3
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/**
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* struct omap_hwmod_sysc_fields - hwmod OCP_SYSCONFIG register field offsets.
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* @midle_shift: Offset of the midle bit
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* @clkact_shift: Offset of the clockactivity bit
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* @sidle_shift: Offset of the sidle bit
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* @enwkup_shift: Offset of the enawakeup bit
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* @srst_shift: Offset of the softreset bit
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* @autoidle_shift: Offset of the autoidle bit
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*/
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struct omap_hwmod_sysc_fields {
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u8 midle_shift;
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u8 clkact_shift;
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u8 sidle_shift;
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u8 enwkup_shift;
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u8 srst_shift;
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u8 autoidle_shift;
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};
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/**
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* struct omap_hwmod_class_sysconfig - hwmod class OCP_SYS* data
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* @rev_offs: IP block revision register offset (from module base addr)
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* @sysc_offs: OCP_SYSCONFIG register offset (from module base addr)
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* @syss_offs: OCP_SYSSTATUS register offset (from module base addr)
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* @idlemodes: One or more of {SIDLE,MSTANDBY}_{OFF,FORCE,SMART}
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* @sysc_flags: SYS{C,S}_HAS* flags indicating SYSCONFIG bits supported
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* @clockact: the default value of the module CLOCKACTIVITY bits
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*
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* @clockact describes to the module which clocks are likely to be
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* disabled when the PRCM issues its idle request to the module. Some
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* modules have separate clockdomains for the interface clock and main
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* functional clock, and can check whether they should acknowledge the
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* idle request based on the internal module functionality that has
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* been associated with the clocks marked in @clockact. This field is
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* only used if HWMOD_SET_DEFAULT_CLOCKACT is set (see below)
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*
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* @sysc_fields: structure containing the offset positions of various bits in
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* SYSCONFIG register. This can be populated using omap_hwmod_sysc_type1 or
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* omap_hwmod_sysc_type2 defined in omap_hwmod_common_data.c depending on
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* whether the device ip is compliant with the original PRCM protocol
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* defined for OMAP2420 or the new PRCM protocol for new OMAP4 IPs.
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* If the device follows a different scheme for the sysconfig register ,
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* then this field has to be populated with the correct offset structure.
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*/
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struct omap_hwmod_class_sysconfig {
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u16 rev_offs;
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u16 sysc_offs;
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u16 syss_offs;
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u16 sysc_flags;
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u8 idlemodes;
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u8 clockact;
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struct omap_hwmod_sysc_fields *sysc_fields;
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};
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/**
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* struct omap_hwmod_omap2_prcm - OMAP2/3-specific PRCM data
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* @module_offs: PRCM submodule offset from the start of the PRM/CM
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* @prcm_reg_id: PRCM register ID (e.g., 3 for CM_AUTOIDLE3)
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* @module_bit: register bit shift for AUTOIDLE, WKST, WKEN, GRPSEL regs
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* @idlest_reg_id: IDLEST register ID (e.g., 3 for CM_IDLEST3)
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* @idlest_idle_bit: register bit shift for CM_IDLEST slave idle bit
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* @idlest_stdby_bit: register bit shift for CM_IDLEST master standby bit
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*
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* @prcm_reg_id and @module_bit are specific to the AUTOIDLE, WKST,
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* WKEN, GRPSEL registers. In an ideal world, no extra information
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* would be needed for IDLEST information, but alas, there are some
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* exceptions, so @idlest_reg_id, @idlest_idle_bit, @idlest_stdby_bit
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* are needed for the IDLEST registers (c.f. 2430 I2CHS, 3430 USBHOST)
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*/
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struct omap_hwmod_omap2_prcm {
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s16 module_offs;
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u8 prcm_reg_id;
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u8 module_bit;
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u8 idlest_reg_id;
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u8 idlest_idle_bit;
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u8 idlest_stdby_bit;
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};
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/**
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* struct omap_hwmod_omap4_prcm - OMAP4-specific PRCM data
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* @clkctrl_reg: PRCM address of the clock control register
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* @rstctrl_reg: adress of the XXX_RSTCTRL register located in the PRM
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* @submodule_wkdep_bit: bit shift of the WKDEP range
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*/
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struct omap_hwmod_omap4_prcm {
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void __iomem *clkctrl_reg;
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void __iomem *rstctrl_reg;
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u8 submodule_wkdep_bit;
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};
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/*
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* omap_hwmod.flags definitions
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*
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* HWMOD_SWSUP_SIDLE: omap_hwmod code should manually bring module in and out
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* of idle, rather than relying on module smart-idle
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* HWMOD_SWSUP_MSTDBY: omap_hwmod code should manually bring module in and out
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* of standby, rather than relying on module smart-standby
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* HWMOD_INIT_NO_RESET: don't reset this module at boot - important for
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* SDRAM controller, etc.
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* HWMOD_INIT_NO_IDLE: don't idle this module at boot - important for SDRAM
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* controller, etc.
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* HWMOD_NO_AUTOIDLE: disable module autoidle (OCP_SYSCONFIG.AUTOIDLE)
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* when module is enabled, rather than the default, which is to
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* enable autoidle
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* HWMOD_SET_DEFAULT_CLOCKACT: program CLOCKACTIVITY bits at startup
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* HWMOD_NO_IDLEST : this module does not have idle status - this is the case
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* only for few initiator modules on OMAP2 & 3.
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* HWMOD_CONTROL_OPT_CLKS_IN_RESET: Enable all optional clocks during reset.
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* This is needed for devices like DSS that require optional clocks enabled
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* in order to complete the reset. Optional clocks will be disabled
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* again after the reset.
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*/
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#define HWMOD_SWSUP_SIDLE (1 << 0)
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#define HWMOD_SWSUP_MSTANDBY (1 << 1)
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#define HWMOD_INIT_NO_RESET (1 << 2)
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#define HWMOD_INIT_NO_IDLE (1 << 3)
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#define HWMOD_NO_OCP_AUTOIDLE (1 << 4)
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#define HWMOD_SET_DEFAULT_CLOCKACT (1 << 5)
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#define HWMOD_NO_IDLEST (1 << 6)
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#define HWMOD_CONTROL_OPT_CLKS_IN_RESET (1 << 7)
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/*
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* omap_hwmod._int_flags definitions
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* These are for internal use only and are managed by the omap_hwmod code.
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*
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* _HWMOD_NO_MPU_PORT: no path exists for the MPU to write to this module
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* _HWMOD_WAKEUP_ENABLED: set when the omap_hwmod code has enabled ENAWAKEUP
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* _HWMOD_SYSCONFIG_LOADED: set when the OCP_SYSCONFIG value has been cached
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*/
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#define _HWMOD_NO_MPU_PORT (1 << 0)
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#define _HWMOD_WAKEUP_ENABLED (1 << 1)
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#define _HWMOD_SYSCONFIG_LOADED (1 << 2)
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/*
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* omap_hwmod._state definitions
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*
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* INITIALIZED: reset (optionally), initialized, enabled, disabled
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* (optionally)
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*
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*
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*/
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#define _HWMOD_STATE_UNKNOWN 0
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#define _HWMOD_STATE_REGISTERED 1
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#define _HWMOD_STATE_CLKS_INITED 2
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#define _HWMOD_STATE_INITIALIZED 3
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#define _HWMOD_STATE_ENABLED 4
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#define _HWMOD_STATE_IDLE 5
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#define _HWMOD_STATE_DISABLED 6
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/**
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* struct omap_hwmod_class - the type of an IP block
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* @name: name of the hwmod_class
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* @sysc: device SYSCONFIG/SYSSTATUS register data
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* @rev: revision of the IP class
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*
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* Represent the class of a OMAP hardware "modules" (e.g. timer,
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* smartreflex, gpio, uart...)
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*/
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struct omap_hwmod_class {
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const char *name;
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struct omap_hwmod_class_sysconfig *sysc;
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u32 rev;
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};
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/**
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* struct omap_hwmod - integration data for OMAP hardware "modules" (IP blocks)
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* @name: name of the hwmod
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* @class: struct omap_hwmod_class * to the class of this hwmod
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* @od: struct omap_device currently associated with this hwmod (internal use)
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* @mpu_irqs: ptr to an array of MPU IRQs (see also mpu_irqs_cnt)
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* @sdma_reqs: ptr to an array of System DMA request IDs (see sdma_reqs_cnt)
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* @prcm: PRCM data pertaining to this hwmod
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* @main_clk: main clock: OMAP clock name
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* @_clk: pointer to the main struct clk (filled in at runtime)
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* @opt_clks: other device clocks that drivers can request (0..*)
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* @masters: ptr to array of OCP ifs that this hwmod can initiate on
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* @slaves: ptr to array of OCP ifs that this hwmod can respond on
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* @dev_attr: arbitrary device attributes that can be passed to the driver
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* @_sysc_cache: internal-use hwmod flags
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* @_mpu_rt_va: cached register target start address (internal use)
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* @_mpu_port_index: cached MPU register target slave ID (internal use)
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* @msuspendmux_reg_id: CONTROL_MSUSPENDMUX register ID (1-6)
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* @msuspendmux_shift: CONTROL_MSUSPENDMUX register bit shift
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* @mpu_irqs_cnt: number of @mpu_irqs
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* @sdma_reqs_cnt: number of @sdma_reqs
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* @opt_clks_cnt: number of @opt_clks
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* @master_cnt: number of @master entries
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* @slaves_cnt: number of @slave entries
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* @response_lat: device OCP response latency (in interface clock cycles)
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* @_int_flags: internal-use hwmod flags
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* @_state: internal-use hwmod state
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* @flags: hwmod flags (documented below)
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* @omap_chip: OMAP chips this hwmod is present on
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* @_mutex: mutex serializing operations on this hwmod
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* @node: list node for hwmod list (internal use)
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*
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* @main_clk refers to this module's "main clock," which for our
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* purposes is defined as "the functional clock needed for register
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* accesses to complete." Modules may not have a main clock if the
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* interface clock also serves as a main clock.
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*
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* Parameter names beginning with an underscore are managed internally by
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* the omap_hwmod code and should not be set during initialization.
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*/
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struct omap_hwmod {
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const char *name;
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struct omap_hwmod_class *class;
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struct omap_device *od;
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struct omap_hwmod_irq_info *mpu_irqs;
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struct omap_hwmod_dma_info *sdma_reqs;
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struct omap_hwmod_rst_info *rst_lines;
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union {
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struct omap_hwmod_omap2_prcm omap2;
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struct omap_hwmod_omap4_prcm omap4;
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} prcm;
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const char *main_clk;
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struct clk *_clk;
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struct omap_hwmod_opt_clk *opt_clks;
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struct omap_hwmod_ocp_if **masters; /* connect to *_IA */
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struct omap_hwmod_ocp_if **slaves; /* connect to *_TA */
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void *dev_attr;
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u32 _sysc_cache;
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void __iomem *_mpu_rt_va;
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struct mutex _mutex;
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struct list_head node;
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u16 flags;
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u8 _mpu_port_index;
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u8 msuspendmux_reg_id;
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u8 msuspendmux_shift;
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u8 response_lat;
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u8 mpu_irqs_cnt;
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u8 sdma_reqs_cnt;
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u8 rst_lines_cnt;
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u8 opt_clks_cnt;
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u8 masters_cnt;
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u8 slaves_cnt;
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u8 hwmods_cnt;
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u8 _int_flags;
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u8 _state;
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const struct omap_chip_id omap_chip;
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};
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int omap_hwmod_init(struct omap_hwmod **ohs);
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int omap_hwmod_register(struct omap_hwmod *oh);
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int omap_hwmod_unregister(struct omap_hwmod *oh);
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struct omap_hwmod *omap_hwmod_lookup(const char *name);
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int omap_hwmod_for_each(int (*fn)(struct omap_hwmod *oh, void *data),
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void *data);
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int omap_hwmod_late_init(u8 skip_setup_idle);
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int omap_hwmod_enable(struct omap_hwmod *oh);
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int _omap_hwmod_enable(struct omap_hwmod *oh);
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int omap_hwmod_idle(struct omap_hwmod *oh);
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int _omap_hwmod_idle(struct omap_hwmod *oh);
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int omap_hwmod_shutdown(struct omap_hwmod *oh);
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int omap_hwmod_assert_hardreset(struct omap_hwmod *oh, const char *name);
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int omap_hwmod_deassert_hardreset(struct omap_hwmod *oh, const char *name);
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int omap_hwmod_read_hardreset(struct omap_hwmod *oh, const char *name);
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int omap_hwmod_enable_clocks(struct omap_hwmod *oh);
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int omap_hwmod_disable_clocks(struct omap_hwmod *oh);
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int omap_hwmod_set_slave_idlemode(struct omap_hwmod *oh, u8 idlemode);
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int omap_hwmod_reset(struct omap_hwmod *oh);
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void omap_hwmod_ocp_barrier(struct omap_hwmod *oh);
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void omap_hwmod_writel(u32 v, struct omap_hwmod *oh, u16 reg_offs);
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u32 omap_hwmod_readl(struct omap_hwmod *oh, u16 reg_offs);
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int omap_hwmod_count_resources(struct omap_hwmod *oh);
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int omap_hwmod_fill_resources(struct omap_hwmod *oh, struct resource *res);
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struct powerdomain *omap_hwmod_get_pwrdm(struct omap_hwmod *oh);
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void __iomem *omap_hwmod_get_mpu_rt_va(struct omap_hwmod *oh);
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int omap_hwmod_add_initiator_dep(struct omap_hwmod *oh,
|
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struct omap_hwmod *init_oh);
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int omap_hwmod_del_initiator_dep(struct omap_hwmod *oh,
|
|
struct omap_hwmod *init_oh);
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|
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int omap_hwmod_set_clockact_both(struct omap_hwmod *oh);
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int omap_hwmod_set_clockact_main(struct omap_hwmod *oh);
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int omap_hwmod_set_clockact_iclk(struct omap_hwmod *oh);
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int omap_hwmod_set_clockact_none(struct omap_hwmod *oh);
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int omap_hwmod_enable_wakeup(struct omap_hwmod *oh);
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int omap_hwmod_disable_wakeup(struct omap_hwmod *oh);
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|
|
int omap_hwmod_for_each_by_class(const char *classname,
|
|
int (*fn)(struct omap_hwmod *oh,
|
|
void *user),
|
|
void *user);
|
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|
|
/*
|
|
* Chip variant-specific hwmod init routines - XXX should be converted
|
|
* to use initcalls once the initial boot ordering is straightened out
|
|
*/
|
|
extern int omap2420_hwmod_init(void);
|
|
extern int omap2430_hwmod_init(void);
|
|
extern int omap3xxx_hwmod_init(void);
|
|
extern int omap44xx_hwmod_init(void);
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#endif
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